Integrated hydrocarbon vacuum cleaning machine

Through the circumferential swing and vertical agitation units of the integrated hydrocarbon vacuum cleaner, the problem of low workpiece stacking and cleaning efficiency in the cleaning machine is solved, achieving efficient cleaning effects and simplified operation.

CN120394448APending Publication Date: 2025-08-01NINGBO BOER INNOVATION TECH CO LTD
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Patent Information

Application Number
CN202510800794.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

The existing hydrocarbon vacuum cleaning machines have problems such as poor cleaning effect, accumulation of workpieces, and inefficiency caused by step-by-step cleaning and rinsing.

Method used

The integrated hydrocarbon vacuum cleaner realizes multi-directional agitation of the workpiece through the combination of the circumferential swing unit and the vertical movement unit. It combines cleaning agent and rinsing of clean water in the same area, reducing workpiece accumulation and increasing contact area.

Benefits of technology

It significantly improves the cleaning effect and efficiency, reduces operating time, avoids workpiece accumulation, and simplifies work steps.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an integrated hydrocarbon vacuum cleaning machine in the technical field of cleaning equipment.The integrated hydrocarbon vacuum cleaning machine comprises a cleaning machine body, a cleaning tank arranged in the cleaning machine body and a containing part inserted into the cleaning tank, a circumferential swinging unit is arranged on the cleaning machine body, and a vertical movement unit is inserted into the containing part; a cleaning unit and a flushing unit are arranged on the two sides of the cleaning tank correspondingly. By arranging the circumferential swinging unit capable of performing reciprocating swinging in the circumferential direction and the vertical moving unit capable of performing reciprocating stirring in the vertical direction, multi-direction stirring of workpieces in the cleaning agent cleaning process and the clean water flushing process is achieved at the same time, the workpiece accumulation phenomenon is effectively prevented, gaps between the workpieces are increased, and the workpiece cleaning efficiency is improved. Therefore, the contact area between the workpiece and a cleaning agent or clean water is increased, and the cleaning effect is obviously improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of cleaning equipment, and particularly to an integrated hydrocarbon vacuum cleaning machine. Background Art

[0002] A hydrocarbon vacuum cleaning machine is a device that uses hydrocarbon cleaning agent as the washing liquid and ultrasonic waves in a vacuum environment to clean the dirt adhered to the outside of parts and other items, and is mainly used for cleaning substances such as chips, oil, and wax on the surface of workpieces.

[0003] The existing cleaning has the following drawbacks: 1. During the cleaning process of the workpiece by the cleaning machine, the workpieces are prone to accumulate in the cleaning basket of the cleaning machine, and the accumulation method makes the workpieces unable to fully contact with the cleaning agent, thus resulting in poor cleaning effect; 2. After the cleaning is completed, the surface of the cleaned workpiece is prone to adsorb residual cleaning agent, so the workpiece needs to be put into a clear water tank for rinsing. However, during the actual clear water rinsing process, the workpieces will precipitate and accumulate under the action of gravity, causing the workpieces to uniformly precipitate and accumulate at the bottom of the cleaning tank, resulting in a long cleaning time, thus seriously affecting the cleaning effect of the cleaning machine on the workpieces; 3. The cleaning of the workpiece with the cleaning agent and the clear water rinsing are carried out at two separate positions, so the workpiece needs to be switched between the two, and the switching method increases the working steps, further prolonging the working time and resulting in low cleaning efficiency. Summary of the Invention

[0004] In view of the problems existing in the above-mentioned existing integrated hydrocarbon vacuum cleaning machine, the present invention hereby provides an integrated hydrocarbon vacuum cleaning machine to solve such problems.

[0005] To solve the above technical problems, the present invention provides the following technical solution: An integrated hydrocarbon vacuum cleaning machine, comprising a cleaning machine body, a cleaning tank, and a containing component, wherein a circumferential swinging unit is arranged on the cleaning machine body, and a vertical movement unit is inserted into the containing component;

[0006] The circumferential swinging unit includes a driven component rotatably connected to the center of the top of the cleaning tank, a reciprocating cylinder arranged on one side above the cleaning machine body, and a rack horizontally arranged on one side of the driven component, and the inner side of the rack meshes with the outer ring of the driven component;

[0007] The vertical movement unit includes a supporting component arranged in the containing component, and a conversion shaft inserted at the central position of the supporting component. A collar is fixedly arranged at the axis center of the supporting component, and multiple groups of sliding shafts are annularly and equally divided in the collar. The conversion shaft includes a central shaft inserted into the sliding shafts, and multiple groups of helical grooves vertically arranged in a helical structure are formed on the central shaft, and the multiple groups of sliding shafts are inserted into the multiple groups of helical grooves in a one-to-one matching manner.

[0008] As a preferred embodiment of the integrated hydrocarbon vacuum cleaning machine of the present invention, wherein: the driven component includes a sleeve rotatably inserted at the top end of the cleaning tank, and the accommodating component passes through the sleeve in the vertical direction, a gear ring provided at the top end of the sleeve, and the gear ring meshes with a rack, a limiting ring provided at the bottom end of the sleeve, and the limiting ring is located inside the cleaning tank, and a plurality of equally spaced limiting holes provided on the gear ring.

[0009] As a preferred embodiment of the integrated hydrocarbon vacuum cleaning machine of the present invention, wherein: the reciprocating cylinder includes a cylinder body fixedly connected to one side of the top end of the cleaning machine body, an extension rod provided inside the cylinder body and extending outward at one end, a connecting shaft fixedly provided in the vertical direction at the end of the extension rod, and the lower end of the connecting shaft is fixedly connected to the rack.

[0010] As a preferred embodiment of the integrated hydrocarbon vacuum cleaning machine of the present invention, wherein: the accommodating component includes a cleaning basket inserted into the sleeve, and the cleaning basket is integrally of a hollow structure, a top ring fixedly provided at the top end of the cleaning basket, a plurality of equally spaced insertion shafts provided on the outer circle of the top ring, and the ends of the insertion shafts extend downward into the limiting holes, and a plurality of equally spaced limiting chutes are provided on the inner wall of the cleaning basket in the vertical direction, and the outer circle of the supporting component is slidably connected in the limiting chutes.

[0011] As a preferred embodiment of the integrated hydrocarbon vacuum cleaning machine of the present invention, wherein: the supporting component further includes a tray located inside the cleaning basket, and the tray is integrally of a hollow structure, a plurality of equally spaced sliders provided on the outer circle of the tray, and the plurality of sliders are inserted into the limiting chutes in a one-to-one matching manner.

[0012] As a preferred embodiment of the integrated hydrocarbon vacuum cleaning machine of the present invention, wherein: the conversion shaft further includes a guide groove vertically corresponding to and connected above each spiral groove, and a fixed seat fixedly provided at the end of the tray, and the fixed seat is fixedly connected to the cleaning tank.

[0013] As a preferred embodiment of the integrated hydrocarbon vacuum cleaning machine of the present invention, wherein: the cleaning tank is fixedly provided inside the cleaning machine body, two short guide plates are distributed on one side of the top end of the cleaning tank, and the two short guide plates are on the same horizontal line, and a long guide plate parallel to the short guide plates is provided at the outermost side of the top end of the cleaning tank, and the rack passes through between the short guide plates and the long guide plate.

[0014] As a preferred embodiment of the integrated hydrocarbon vacuum cleaning machine of the present invention, wherein: a chamber is provided inside the cleaning tank, and the lower end of the accommodating component extends into the chamber, and the cleaning unit and the flushing unit are both communicated with the chamber.

[0015] As a preferred embodiment of the integrated hydrocarbon vacuum cleaning machine of the present invention, the cleaning unit includes a cleaning agent storage component located on the left side of the cleaning tank, a first connecting pipe arranged at the top of the cleaning agent storage component and the left side of the cleaning tank, a first conveying pump arranged between the first connecting pipe and the cleaning agent storage component, and a first valve group connected between the right side of the cleaning agent storage component and the bottom of the cleaning tank.

[0016] As a preferred embodiment of the integrated hydrocarbon vacuum cleaning machine of the present invention, the rinsing unit includes a clean water storage component located on the right side of the cleaning tank, a second connecting pipe arranged at the top of the clean water storage component and the right side of the cleaning tank, a second conveying pump arranged between the second connecting pipe and the clean water storage component, and a second valve group connected between the left side of the clean water storage component and the bottom of the cleaning tank.

[0017] Advantages of the present invention: By combining the operations of cleaning agent cleaning and clean water rinsing in the same area, the occupied space of the device is reduced to a certain extent, the working step of switching and transferring workpieces is removed, the operation time is shortened, and the working efficiency of the cleaning work is significantly improved;

[0018] By providing a circumferential swing unit that can swing reciprocally in the circumferential direction and a vertical movement unit that reciprocally agitates in the vertical direction, multi-directional agitation of the workpieces during both the cleaning agent cleaning and clean water rinsing processes is achieved simultaneously, effectively preventing the occurrence of workpiece accumulation, increasing the gaps between workpieces, thereby increasing the contact area between the workpieces and the cleaning agent or clean water, and significantly improving the cleaning effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for description in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts. Among them:

[0020] Figure 1 It is a schematic diagram of the overall structure of the integrated hydrocarbon vacuum cleaning machine of the present invention.

[0021] Figure 2 It is a schematic diagram of the internal structure of the integrated hydrocarbon vacuum cleaning machine of the present invention.

[0022] Figure 3 It is a schematic diagram of the structure of the driven component of the integrated hydrocarbon vacuum cleaning machine of the present invention.

[0023] Figure 4 It is a schematic diagram of the structure of the accommodating component of the integrated hydrocarbon vacuum cleaning machine of the present invention.

[0024] Figure 5This is a schematic structural diagram of the supporting component of the integrated hydrocarbon vacuum cleaning machine of the present invention.

[0025] Figure 6 This is a schematic structural diagram of the conversion shaft of the integrated hydrocarbon vacuum cleaning machine of the present invention.

[0026] Figure 7 This is a schematic structural diagram of the connection part between the vertical movement unit and the accommodating component of the integrated hydrocarbon vacuum cleaning machine of the present invention.

[0027] Figure 8 This is a schematic diagram of the circumferential swing state of the integrated hydrocarbon vacuum cleaning machine of the present invention.

[0028] Figure 9 This is a schematic diagram of the vertical movement state of the integrated hydrocarbon vacuum cleaning machine of the present invention.

[0029] Reference numerals: 1, cleaning machine body; 2, cleaning tank; 21, long guide plate; 22, short guide plate; 23, chamber; 3, circumferential swing unit; 31, driven component; 311, sleeve; 312, gear ring; 313, limit ring; 314, limit hole; 32, reciprocating cylinder; 321, cylinder block; 322, extension rod; 323, connecting shaft; 33, rack; 4, accommodating component; 41, cleaning basket; 42, top ring; 43, insertion shaft; 44, limit chute; 5, vertical movement unit; 51, supporting component; 511, tray; 512, slider; 513, collar; 514, sliding shaft; 52, conversion shaft; 521, central shaft; 522, spiral groove; 523, guide groove; 524, fixed seat; 6, cleaning unit; 61, cleaning agent storage component; 62, connecting pipe one; 63, delivery pump one; 64, valve group one; 7, rinsing unit; 71, clean water storage component; 72, connecting pipe two; 73, delivery pump two; 74, valve group two. Detailed implementation manners

[0030] In order to make the above objects, features and advantages of the present invention more obvious and understandable, the following will give a detailed description of the specific implementation manners of the present invention in conjunction with the drawings in the specification.

[0031] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention can also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the connotation of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed below.

[0032] Embodiment

[0033] Refer to Figures 1 to 9, which is an embodiment of the present invention, includes an integrated hydrocarbon vacuum cleaning machine, including a cleaning machine body 1, a cleaning tank 2, and a receiving component 4. A circumferential swinging unit 3 is provided on the cleaning machine body 1, and a vertical movement unit 5 is inserted into the receiving component 4;

[0034] The circumferential swinging unit 3 includes a driven component 31 rotatably connected to the center of the top end of the cleaning tank 2, a reciprocating cylinder 32 provided on one side above the cleaning machine body 1, and a rack 33 horizontally provided on one side of the driven component 31. The inner side of the rack 33 meshes with the outer ring of the driven component 31. The receiving component 4 vertically passes through the driven component 31 and extends into the cleaning tank 2. At the same time, the outer end of the reciprocating cylinder 32 is fixedly connected to the rack 33. The receiving component 4 is inserted into the driven component 31, and the two are circumferentially limited to each other;

[0035] Further, referring to Figure 8 , the driven component 31 and the receiving component 4 are integrally connected in the circumferential direction, and the driven component 31 is rotatably connected to the cleaning tank 2. Through the meshing of the rack 33 and the driven component 31, the rack 33 can drive the driven component 31 and the receiving component 4 to perform reciprocating rotation in the circumferential direction in the cleaning tank 2 through horizontal reciprocating motion. The reciprocating rotation action can realize the reciprocating swing of the workpiece in the receiving component 4 in the circumferential direction, thereby effectively preventing the occurrence of workpiece accumulation, increasing the gap between workpieces, and then increasing the contact area between the workpieces and the cleaning agent or clean water, significantly improving the cleaning effect;

[0036] The vertical movement unit 5 includes a supporting component 51 provided in the receiving component 4, and a conversion shaft 52 inserted at the central position of the supporting component 51. A collar 513 is fixedly provided at the axis of the supporting component 51, and multiple groups of sliding shafts 514 are annularly equally divided in the collar 513. The conversion shaft 52 includes a central shaft 521 inserted into the sliding shafts 514, and multiple groups of spiral grooves 522 provided on the central shaft 521 in a vertical spiral structure. The multiple groups of sliding shafts 514 and the multiple groups of spiral grooves 522 are inserted in a one-to-one matching manner. The supporting component 51 is slidably connected to the receiving component 4 in the vertical direction, and is circumferentially limited to the receiving component 4. The end of the conversion shaft 52 passes outward through the receiving component 4 and is fixedly connected to the cleaning tank 2. The multiple groups of spiral grooves 522 are equidistantly distributed on the outer wall of the supporting component 51;

[0037] Further, referring to Figure 9, the conversion shaft 52 is fixedly connected inside the cleaning tank 2, so it remains stationary as a whole. The supporting component 51 is slidably sleeved on the conversion shaft 52 as a whole through the cooperation of the sliding shaft 514 and the spiral groove 522, and the supporting component 51 is restricted by the spiral groove 522 through the fixed seat 524. When the supporting component 51 receives the circular driving force applied by the accommodating component 4, and the conversion shaft 52 remains stationary as a whole at this time, the supporting component 51 will slide along the spiral angle of the spiral groove 522 through the sliding shaft 514. The way of sliding along the spiral groove 522 will cause the supporting component 51 to move in a spiral rotation upward or downward as a whole. By controlling the rotation direction of the accommodating component 4, it can be controlled whether the supporting component 51 spirally ascends or spirally descends, so as to realize the function of the supporting component 51 reciprocatingly swinging and stirring in the vertical direction inside the accommodating component 4, and further achieve the function of driving the workpieces located inside the accommodating component 4 and stacked on the supporting component 51 to move, thereby effectively preventing the occurrence of workpiece stacking phenomenon, increasing the gaps between the workpieces, and further increasing the contact area between the workpieces and the cleaning agent or clean water, significantly improving the cleaning effect.

[0038] Among them, referring to Figure 3 and Figure 9 , the driven component 31 includes a sleeve 311 rotatably inserted at the top end of the cleaning tank 2, and the accommodating component 4 passes vertically through the sleeve 311. A gear ring 312 is provided at the top end of the sleeve 311, and the gear ring 312 meshes with the rack 33. A limiting ring 313 is provided at the bottom end of the sleeve 311, and the limiting ring 313 is located inside the cleaning tank 2. And a plurality of equally spaced limiting holes 314 are provided on the gear ring 312. The driven component 31 is rotationally and limit-connected to the cleaning tank 2 through the gear ring 312 and the limiting ring 313 as a whole, and can be driven by the rack 33 to rotate through the meshing of the gear ring 312 and the rack 33. The limiting holes 314 limit-connect the accommodating component 4 and the driven component 31 in the circumferential direction, so that the two can move synchronously.

[0039] Among them, referring to Figure 2 , the reciprocating cylinder 32 includes a cylinder body 321 fixedly connected to one side of the top end of the cleaning machine body 1, an extension rod 322 provided inside the cylinder body 321 and extending outward at one end, a connecting shaft 323 fixedly provided vertically at the end of the extension rod 322, and the lower end of the connecting shaft 323 is fixedly connected to the rack 33. The cylinder body 321 can drive the rack 33 to move by controlling the telescopic movement of the extension rod 322, and the moving rack 33 drives the driven component 31 to slide circumferentially as a whole through the meshing with the gear ring 312.

[0040] Among them, referring to Figure 4The accommodating component 4 includes a cleaning basket 41 inserted in the sleeve 311, and the cleaning basket 41 has a hollow structure as a whole, and is fixedly arranged on the top ring 42 of the cleaning basket 41, and multiple groups of equally divided plug shafts 43 are arranged on the outer ring of the top ring 42, and the ends of the plug shafts 43 extend downward into the limiting holes 314, as well as multiple groups of equally divided limiting slide grooves 44 on the inner wall of the cleaning basket 41 in the vertical direction, and the outer ring of the supporting component 51 is slidably connected in the limiting slide grooves 44, and the cleaning basket 41 is used to store workpieces. The diameter of the top ring 42 is larger than the inner diameter of the sleeve 311, so that the accommodating component 4 is limited in the vertical direction as a whole and maintained in the circumferential swing unit 3. The plug shaft 43 is plugged into the limiting hole 314, so that the accommodating component 4 and the driven component 31 form a circumferential connection relationship, so that the accommodating component 4 can follow the driven component 31 for synchronous circumferential rotation.

[0041] Further, refer to Figure 5 and Figure 7 The support component 51 also includes a tray 511 located in the cleaning basket 41, and the tray 511 is a hollow structure as a whole, with multiple groups of sliders 512 equally arranged on the outer ring of the tray 511, and multiple groups of sliders 512 are matched and plugged with the limiting slide grooves 44 in a one-to-one corresponding manner. The tray 511 can support the workpiece located in the cleaning basket 41 from the bottom, and then move the workpiece by picking up and dropping down, so as to prevent the problem of workpiece accumulation from occurring with time, and the sliders 512 are matched and plugged with the limiting slide grooves 44, so that the sliders 512 and the limiting slide grooves 44 form a circumferential limit with each other. Therefore, through the matching connection between the sliders 512 and the limiting slide grooves 44, the supporting component 51 can synchronously follow the accommodating component 4 for circumferential rotation, but the sliders 512 and the limiting slide grooves 44 are not limited to each other in the vertical direction. Therefore, the supporting component 51 can slide vertically along the limiting slide grooves 44 inside the cleaning basket 41 through the sliders 512 without being hindered from the vertical direction.

[0042] Further, refer to Figure 6 The conversion shaft 52 also includes a guide groove 523 vertically connected to the top of each group of spiral grooves 522, and a fixed seat 524 fixedly arranged at the end of the tray 511, and the fixed seat 524 is fixedly connected to the cleaning tank 2. The guide groove 523 opened in the vertical direction facilitates the sliding shaft 514 to enter or exit the spiral groove 522. The conversion shaft 52 is fixedly set in the cleaning tank 2 through the fixed seat 524, and the whole maintains a fixed posture during operation.

[0043] In summary, refer to Figure 8During cleaning, the workpiece is placed in the receiving part 4, and the reciprocating cylinder 32 is started to drive the rack 33 to move in a horizontal circular direction. The horizontally moving rack 33 engages with the gear ring 312 to drive the circumferential swing unit 3 and the receiving part 4 to rotate forward and reverse in a circumferential direction in the cleaning tank 2, thereby realizing the reciprocating circumferential swing of the workpiece in the receiving part 4.

[0044] Reference Figure 9 When the accommodating part 4 rotates in the circumferential direction, the accommodating part 4 will drive the conversion shaft 52 to synchronously rotate in the circumferential direction in a forward and reverse direction through the cooperation between the limiting sliding groove 44 and the slider 512. The rotating supporting part 51 will slide along the spiral angle of the spiral groove 522 through the sliding shaft 514, thereby driving the supporting part 51 to perform a vertical reciprocating motion in a spiral rotation manner, thereby achieving the function of driving the workpieces located in the accommodating part 4 and stacked on the supporting part 51 to move in the vertical direction.

[0045] By coordinating the reciprocating oscillation in the circumferential direction and the reciprocating stirring in the vertical direction, the workpieces can be stirred in multiple directions during the cleaning process of the detergent and the rinse with clean water, so that the gaps between the workpieces are increased, and the contact area between the workpieces and the detergent or clean water is increased, thereby effectively avoiding the accumulation of workpieces and significantly improving the cleaning effect.

[0046] Among them, reference Figure 8 The cleaning tank 2 is fixedly arranged in the cleaning machine body 1, and two groups of short guide plates 22 are distributed on one side of the top of the cleaning tank 2, and the two groups of short guide plates 22 are on the same horizontal line. A long guide plate 21 parallel to the short guide plate 22 is provided on the outermost side of the top of the cleaning tank 2, and the rack 33 passes between the short guide plate 22 and the long guide plate 21. The long guide plate 21 cooperates with the short guide plate 22 to form a track matching the rack 33, so that the rack 33 can only slide in the horizontal direction, avoiding dislocation of the rack 33 when moving.

[0047] Among them, reference Figure 9 A chamber 23 is provided inside the cleaning tank 2, and the lower end of the accommodating part 4 extends into the chamber 23. The cleaning unit 6 and the flushing unit 7 are both connected to the chamber 23. The chamber 23 is a place for cleaning the workpiece. Different cleaning functions are achieved according to the injected liquid. For example, if cleaning agent is injected, it is a place for vacuum cleaning of the workpiece. If clean water is injected, it is a place for cleaning the workpiece with residual cleaning agent.

[0048] Among them, reference Figure 2, the cleaning unit 6 includes a cleaning agent storage component 61 located on the left side of the cleaning tank 2, a first connecting pipe 62 provided at the top of the cleaning agent storage component 61 and connected to the left side of the cleaning tank 2, a first transfer pump 63 provided between the first connecting pipe 62 and the cleaning agent storage component 61, and a first valve group 64 connected between the right side of the cleaning agent storage component 61 and the bottom of the cleaning tank 2. The cleaning agent storage component 61 is a box for storing the cleaning agent. The first valve group 64 is a valve group with a filtering function, which can filter the used cleaning agent and start and stop according to actual requirements and operations. The first transfer pump 63 can inject the cleaning agent in the cleaning agent storage component 61 into the chamber 23 through the first connecting pipe 62, and the first valve group 64 can recycle the cleaning agent in the chamber 23 into the cleaning agent storage component 61 to realize the circulation of the cleaning agent.

[0049] Among them, referring to Figure 2 , the rinsing unit 7 includes a clean water storage component 71 located on the right side of the cleaning tank 2, a second connecting pipe 72 provided at the top of the clean water storage component 71 and connected to the right side of the cleaning tank 2, a second transfer pump 73 provided between the second connecting pipe 72 and the clean water storage component 71, and a second valve group 74 connected between the left side of the clean water storage component 71 and the bottom of the cleaning tank 2. The principle of the rinsing unit 7 is the same as that of the cleaning unit 6, except that the clean water storage component 71 stores clean water.

[0050] During the use process, according to the use requirements, the cleaning unit 6 first injects the cleaning agent into the chamber 23, and then performs the cleaning work. After the cleaning is completed, the cleaning agent is recycled into the cleaning agent storage component 61 through the first valve group 64. At this time, the chamber 23 is in an empty state, and the workpiece cleaned by the cleaning agent still remains in the chamber 23 following the accommodating component 4. Subsequently, the rinsing unit 7 injects clean water into the chamber 23, and then performs the rinsing operation. After the rinsing is completed, the water is recycled into the clean water storage component 71 through the second valve group 74. In summary, by combining the operations of cleaning with the cleaning agent and rinsing with clean water in the chamber 23, the occupied space of the device is reduced to a certain extent, so that the device only needs to inject different liquids according to the operation requirements to meet the work requirements, eliminating the work steps of transferring the workpiece, shortening the operation time, and significantly improving the work efficiency of the cleaning work.

[0051] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not limitations. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.

Claims

1. An integrated hydrocarbon vacuum cleaning machine, comprising a cleaning machine body (1), a cleaning tank (2) and a containing component (4), characterized in that: A circumferential swing unit (3) is provided on the cleaning machine body (1), and a vertical movement unit (5) is inserted into the accommodating component (4); The circumferential swing unit (3) includes a driven component (31) rotatably connected to the center of the top end of the cleaning tank (2), a reciprocating cylinder (32) arranged on one side above the cleaning machine body (1), and a rack (33) horizontally arranged on one side of the driven component (31), and the inner side of the rack (33) meshes with the outer ring of the driven component (31); The vertical movement unit (5) includes a supporting component (51) arranged in the accommodating component (4), and a conversion shaft (52) inserted at the central position of the supporting component (51). A collar (513) is fixedly arranged at the axis center of the supporting component (51), and multiple groups of sliding shafts (514) are equally divided and arranged annularly in the collar (513). The conversion shaft (52) includes a central shaft (521) inserted into the sliding shafts (514), and multiple groups of spiral grooves (522) formed in a vertical spiral structure on the central shaft (521), and the multiple groups of sliding shafts (514) are inserted into the multiple groups of spiral grooves (522) in a one-to-one matching manner.

2. The integrated hydrocarbon vacuum cleaning machine according to claim 1, characterized in that: The driven component (31) includes a sleeve (311) rotatably inserted at the top end of the cleaning tank (2), and the accommodating component (4) passes through the sleeve (311) in the vertical direction. A gear ring (312) is arranged at the top end of the sleeve (311), and the gear ring (312) meshes with the rack (33). A limiting ring (313) is arranged at the bottom end of the sleeve (311), and the limiting ring (313) is located in the cleaning tank (2), and multiple groups of limiting holes (314) are equally divided and arranged on the gear ring (312).

3. The integrated hydrocarbon vacuum cleaning machine according to claim 1, wherein: The reciprocating cylinder (32) includes a cylinder body (321) fixedly connected to one side of the top end of the cleaning machine body (1), an extension rod (322) arranged in the cylinder body (321) and extending outward at one end, and a connecting shaft (323) fixedly arranged in the vertical direction at the end of the extension rod (322), and the lower end of the connecting shaft (323) is fixedly connected to the rack (33).

4. The integrated hydrocarbon vacuum cleaner according to claim 2, characterized in that: The accommodating component (4) includes a cleaning basket (41) inserted into the sleeve (311), and the cleaning basket (41) is integrally in a hollow structure. A top ring (42) is fixedly arranged at the top end of the cleaning basket (41), multiple groups of insertion shafts (43) are equally divided and arranged on the outer circle of the top ring (42), and the ends of the insertion shafts (43) extend downward into the limiting holes (314), and multiple groups of limiting sliding grooves (44) are equally divided and opened on the inner wall of the cleaning basket (41) in the vertical direction, and the outer circle of the supporting component (51) is slidably connected in the limiting sliding grooves (44).

5. The integrated hydrocarbon vacuum cleaning machine according to claim 4, characterized in that: The supporting component (51) further includes a tray (511) located in the cleaning basket (41), and the tray (511) is integrally in a hollow structure. Multiple groups of sliding blocks (512) are equally divided and arranged on the outer circle of the tray (511), and the multiple groups of sliding blocks (512) are inserted into the limiting sliding grooves (44) in a one-to-one matching manner.

6. The integrated hydrocarbon vacuum cleaner according to claim 1, wherein: The conversion shaft (52) further includes guide grooves (523) vertically and correspondingly connected above each group of spiral grooves (522), and a fixed seat (524) fixedly arranged at the end of the tray (511), and the fixed seat (524) is fixedly connected to the cleaning tank (2).

7. The integrated hydrocarbon vacuum cleaning machine according to claim 1, wherein: The cleaning tank (2) is fixedly arranged in the cleaning machine body (1). Two groups of short guide plates (22) are distributed on one side of the top end of the cleaning tank (2), and the two groups of short guide plates (22) are on the same horizontal line. A long guide plate (21) parallel to the short guide plates (22) is arranged on the outermost side of the top end of the cleaning tank (2), and the rack (33) passes through between the short guide plates (22) and the long guide plate (21).

8. The integrated hydrocarbon vacuum cleaning machine according to claim 7, wherein: A chamber (23) is formed inside the cleaning tank (2), and the lower end of the accommodating component (4) extends into the chamber (23). A cleaning unit (6) and a rinsing unit (7) are respectively arranged on both sides of the cleaning tank (2), and both the cleaning unit (6) and the rinsing unit (7) communicate with the chamber (23).

9. The integrated hydrocarbon vacuum cleaner according to claim 8, wherein: The cleaning unit (6) includes a cleaning agent storage component (61) on the left side surface of the cleaning tank (2), a first connecting pipe (62) arranged at the top end of the cleaning agent storage component (61) and connected to the left side surface of the cleaning tank (2), a first transfer pump (63) arranged between the first connecting pipe (62) and the cleaning agent storage component (61), and a first valve group (64) communicating between the right side surface of the cleaning agent storage component (61) and the bottom end of the cleaning tank (2).

10. The integrated hydrocarbon vacuum cleaning machine according to claim 8, characterized in that: The rinsing unit (7) includes a clean water storage component (71) on the right side surface of the cleaning tank (2), a second connecting pipe (72) arranged at the top end of the clean water storage component (71) and connected to the right side of the cleaning tank (2), a second transfer pump (73) arranged between the second connecting pipe (72) and the clean water storage component (71), and a second valve group (74) communicating between the left side surface of the clean water storage component (71) and the bottom end of the cleaning tank (2).